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Trapping dynamics of electrons and holes in a nanocrystalline TiO_2 film revealed by femtosecond visibleear-infrared transient absorption spectroscopy

机译:飞秒可见/近红外瞬态吸收光谱揭示纳米TiO_2薄膜中电子和空穴的俘获动力学

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摘要

The trapping dynamics of electrons and holes in TiO_2 nanocrystlline films excited by ultraviolet laser pulses (266-nm wavelength) were studied with femtosecond visibleear-infrared transient absorption spectroscopy.UV irradiations of the TiO_2 film generated hot carriers in the conduction and valence bands.The formation rate of deeply trapped holes was estimated to be 200 +- 50 fs.The rate was limited by intraband relaxation (cooling) of hot holes.The spectral shift of the transient absorption indicated that trapped holes relax from shallow sites to deep ones.This relaxation was occurring more than 100 ps after photo-excitation.
机译:用飞秒可见/近红外瞬态吸收光谱法研究了紫外激光脉冲(波长266nm)激发的TiO_2纳米晶薄膜中电子和空穴的俘获动力学。TiO_2薄膜的UV辐射在导带和价带中产生热载流子。估计深陷孔的形成速率为200 +-50 fs,受热孔的带内弛豫(冷却)限制,瞬态吸收的光谱位移表明陷孔从浅处向深处弛豫光激发后,这种弛豫发生超过100 ps。

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